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Forschungsdatenbank PMU-SQQUID

Publikationen

Gewähltes Keyword: RVD


Organ-restricted vascular delivery of nanoparticles for lung cancer therapy.
Bölükbas, DA; Datz, S; Meyer-Schwickerath, C; Morrone, C; Doryab, A; Gößl, D; Vreka, M; Yang, L; Argyo, C; van Rijt, SH; Lindner, M; Eickelberg, O; Stoeger, T; Schmid, O; Lindstedt, S; Stathopoulos, GT; Bein, T; Wagner, DE; Meiners, S;
Adv Ther (Weinh). 2020; 3(7):
Originalarbeiten (Zeitschrift)
Acid- and Volume-Sensitive Chloride Currents in Human Chondrocytes.
Kittl, M; Winklmayr, M; Helm, K; Lettner, J; Gaisberger, M; Ritter, M; Jakab, M;
Front Cell Dev Biol. 2020; 8: 583131
Originalarbeiten (Zeitschrift)
Acid- and Volume-Sensitive Chloride Currents in Microglial Cells.
Kittl, M; Helm, K; Beyreis, M; Mayr, C; Gaisberger, M; Winklmayr, M; Ritter, M; Jakab, M;
Int J Mol Sci. 2019; 20(14):
Originalarbeiten (Zeitschrift)
EGF stimulates IClswell by a redistribution of proteins involved in cell volume regulation.
Tamma, G; Dossena, S; Nofziger, C; Valenti, G; Svelto, M; Paulmichl, M;
CELL PHYSIOL BIOCHEM. 2011; 28(6): 1191-1202.
Originalarbeiten (Zeitschrift)
LSm4 associates with the plasma membrane and acts as a co-factor in cell volume regulation.
Gandini, R; Dossena, S; Vezzoli, V; Tamplenizza, M; Salvioni, E; Ritter, M; Paulmichl, M; Furst, J;
CELL PHYSIOL BIOCHEM. 2008; 22(5-6): 579-590.
Originalarbeiten (Zeitschrift)
Glucose induces anion conductance and cytosol-to-membrane transposition of ICln in INS-1E rat insulinoma cells.
Jakab, M; Grundbichler, M; Benicky, J; Ravasio, A; Chwatal, S; Schmidt, S; Strbak, V; Fürst, J; Paulmichl, M; Ritter, M;
CELL PHYSIOL BIOCHEM. 2006; 18(1-3): 21-34.
Originalarbeiten (Zeitschrift)
Hypotonicity and ethanol modulate BK channel activity and chloride currents in GH4/C1 pituitary tumour cells.
Jakab, M; Schmidt, S; Grundbichler, M; Paulmichl, M; Hermann, A; Weiger, T; Ritter, M;
Acta Physiol (Oxf). 2006; 187(1-2):51-59
Übersichtsarbeiten
Cell swelling stimulates cytosol to membrane transposition of ICln.
Ritter, M; Ravasio, A; Jakab, M; Chwatal, S; Fürst, J; Laich, A; Gschwentner, M; Signorelli, S; Burtscher, C; Eichmüller, S; Paulmichl, M;
J Biol Chem. 2003; 278(50):50163-50174
Originalarbeiten (Zeitschrift)
Molecular and functional aspects of anionic channels activated during regulatory volume decrease in mammalian cells.
Fürst, J; Gschwentner, M; Ritter, M; Bottà, G; Jakab, M; Mayer, M; Garavaglia, L; Bazzini, C; Rodighiero, S; Meyer, G; Eichmüller, S; Wöll, E; Paulmichl, M;
Pflugers Arch. 2002; 444(1-2): 1-25.
Übersichtsarbeiten
ICln channels reconstituted in heart-lipid bilayer are selective to chloride.
Garavaglia, ML; Rodighiero, S; Bertocchi, C; Manfredi, R; Fürst, J; Gschwentner, M; Ritter, M; Bazzini, C; Bottà, G; Jakab, M; Meyer, G; Paulmichl, M;
Pflugers Arch. 2002; 443(5-6): 748-753.
Originalarbeiten (Zeitschrift)
Mechanisms sensing and modulating signals arising from cell swelling
Jakab, M; Furst, J; Gschwentner, M; Botta, G; Garavaglia, ML; Bazzini, C; Rodighiero, S; Meyer, G; Eichmuller, S; Woll, W; Chwatal, S; Ritter, M; Paulmichl, M
CELL PHYSIOL BIOCHEM. 2002; 12(5-6): 235-258.
Übersichtsarbeiten
Functional reconstitution of ICln in lipid bilayers.
Fürst, J; Bazzini, C; Jakab, M; Meyer, G; König, M; Gschwentner, M; Ritter, M; Schmarda, A; Bottà, G; Benz, R; Deetjen, P; Paulmichl, M;
Pflugers Arch. 2000; 440(1): 100-115.
Originalarbeiten (Zeitschrift)
Characterization of the human gene coding for the swelling-dependent chloride channel ICln at position 11q13.5-14.1 (CLNS1A) and further characterization of the chromosome 6 (CLNS1B) localization.
Nagl, UO; Erdel, M; Bergmann, F; Oehl, B; Scandella, E; Musante, L; Galietta, LJ; Gschwentner, M; Fürst, J; Schmarda, A; Hofer, S; Utermann, G; Deetjen, P; Paulmichl, M;
Gene. 1998; 209(1-2): 59-63.
Originalarbeiten (Zeitschrift)
Cloning of the swelling-dependent chloride channel I-Cln homologue from zebra fish
Schmarda, A; Nagl, UO; Gschwentner, M; Furst, J; Hofer, S; Deetjen, P; Paulmichl, M
CELL PHYSIOL BIOCHEM. 1997; 7(5): 298-302.
Kurzberichte/Notes
Blockade of swelling-induced chloride channels by phenol derivatives.
Gschwentner, M; Jungwirth, A; Hofer, S; Wöll, E; Ritter, M; Susanna, A; Schmarda, A; Reibnegger, G; Pinggera, GM; Leitinger, M; Frick, J; Deetjen, P; Paulmichl, M;
Br J Pharmacol. 1996; 118(1): 41-48.
Originalarbeiten (Zeitschrift)